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ELECTRIC STRENGTH OF POLYMERS

机译:聚合物的电强度

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摘要

In the theory of electric strength, usually referred to as free-volume theory, breakdown is initiated by free electrons accelerated by electric field in the largest of the holes present in the amorphous phase of all polymers. In contrast to previous publications, the breakdown is treated as the final stage of the disproportionate rise of the electron current in very high field. Breakdown starts when the energy Fx gained by free electrons in field F on free path of length x attains with probability P = 1 the barrier energy E(mu). Then all electrons with this energy hop over the barriers E(mu) separating the traps in the compact structure. In this way breakdown is induced; the breakdown field therefore depends on the same factors as the longest free path. It is shown that, besides field-exposed volume and temperature, the pre-breakdown field stress is one of these factors. The resulting dependence of the breakdown field on these factors is derived starting from the distribution of the largest hole volumes. Calculated curves of electric strength as a function of temperature are in agreement with the measurements. The consequences for application of polymers as high-voltage insulation are indicated. [References: 45]
机译:在通常被称为自由体积理论的电强度理论中,击穿是由电场加速的自由电子在所有聚合物的非晶相中存在的最大空穴中引发的。与以前的出版物相反,击穿被视为在非常高的电场中电子电流不成比例上升的最后阶段。当在长度为x的自由路径上由场F中的自由电子获得的能量Fx以概率P = 1达到势垒能量E(mu)时,击穿开始。然后,所有具有此能量的电子都跃过在紧凑结构中将陷阱隔离的势垒E(mu)。这样就引起了故障。因此,击穿场取决于与最长自由程相同的因素。结果表明,除现场暴露的体积和温度外,击穿前的现场应力也是这些因素之一。从最大孔体积的分布开始,得出击穿场对这些因素的依赖性。电气强度随温度变化的计算曲线与测量值一致。指出了将聚合物用作高压绝缘的后果。 [参考:45]

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